首页> 外文期刊>International journal of sustainable engineering >Combustion and emission characteristics of a direct injection CI engine when operated on Marotti oil methyl ester and blends of Marotti oil methyl ester and diesel
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Combustion and emission characteristics of a direct injection CI engine when operated on Marotti oil methyl ester and blends of Marotti oil methyl ester and diesel

机译:在Marotti油甲酯和Marotti油甲酯与柴油的混合物上运行时,直喷CI发动机的燃烧和排放特性

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This paper presents a feasibility study of Marotti oil biodiesel as an alternative to diesel fuel for a compression ignition engine. Marotti oil is inedible and available mainly in the state of Kerala. The oil is extracted from Marotti seeds. However, the high viscosity, poor volatility and cold flow characteristics of many vegetable oils in general, and Marotti oil in particular, can cause problems such as injector coking, severe engine deposits, filter gumming, piston ring sticking and thickening of lubrication from long-term use in diesel engines. These problems can be eliminated or minimised by transesterification of the vegetable oils to form monoesters. Although transesterification improves the fuel properties of vegetable oil, the viscosity and volatility of biodiesel are still worse than for petroleum diesel fuel. Subsequently, Marotti oil was converted into its methyl ester by the process of transesterification. The methyl ester was blended with diesel in various proportions to obtain different blends of Marotti oil with diesel. The performance, emission and combustion characteristics of Marotti methyl ester and its blends with diesel were studied and the results were compared with the base line data generated for diesel operation. Experiments were conducted using an injection timing of 23° before top dead centre (BTDC) and an injection pressure of 205 bar at various power outputs and at a constant rated speed of 1500 rpm. The engine manufacturer specifies an injection timing of 23° BTDC and injection pressure of 205 bar for the standard diesel fuel operation. The heat release rates, maximum rate of pressure rise, ignition delay and combustion duration for these fuel combinations were obtained. From the results obtained, it was observed that the biodiesel produced from Marotti oil and its blends with diesel have slightly reduced brake thermal efficiency and increased smoke, hydrocarbon, carbon monoxide and reduced NO_x emissions compared with diesel-only operation. The investigation showed that the B20 biodiesel blend of Marotti oil with diesel produced better performance in terms of higher brake thermal efficiency, lower specific fuel consumption and comparatively lower emissions compared to the other blend ratios considered.
机译:本文介绍了Marotti石油生物柴油作为压燃式发动机替代柴油燃料的可行性研究。 Marotti油是不可食用的,主要在喀拉拉邦使用。油是从Marotti种子中提取的。但是,一般来说,许多植物油(尤其是马洛蒂油)的粘度高,挥发性差和冷流特性差,可能会引起问题,例如喷油器结焦,严重的发动机沉积物,滤清器粘胶,活塞环粘滞以及长期润滑造成的稠化。柴油发动机中的长期使用。这些问题可以通过植物油的酯交换反应形成单酯而消除或最小化。尽管酯交换反应改善了植物油的燃料性能,但生物柴油的粘度和挥发性仍比石油柴油燃料差。随后,通过酯交换反应将马洛蒂油转化为其甲酯。将甲酯与柴油按各种比例混合,以获得马洛蒂油与柴油的不同混合物。研究了Marotti甲酯及其与柴油的共混物的性能,排放和燃烧特性,并将结果与​​柴油运行的基线数据进行了比较。使用上死点(BTDC)之前的23°喷射正时和各种功率输出和1500 rpm的恒定额定转速下205 bar的喷射压力进行了实验。发动机制造商为标准柴油运行指定了23°BTDC的喷射正时和205 bar的喷射压力。获得了这些燃料组合的放热率,最大压力升高率,点火延迟和燃烧持续时间。从获得的结果可以看出,与仅柴油运行相比,马洛蒂油及其与柴油的混合物生产的生物柴油的制动热效率略有降低,烟气,碳氢化合物,一氧化碳的排放增加,NO_x排放降低。调查显示,与其他混合比相比,马洛蒂油与柴油的B20生物柴油混合料在更高的制动热效率,更低的比燃料消耗和相对更低的排放方面表现出更好的性能。

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